Applied Scanning Probe Methods XIII

Applied Scanning Probe Methods XIII

Author: Bharat Bhushan

Publisher: Springer Science & Business Media

Published: 2008-10-29

Total Pages: 284

ISBN-13: 354085049X

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The volumes XI, XII and XIII examine the physical and technical foundation for recent progress in applied scanning probe techniques. The first volume came out in January 2004, the second to fourth volumes in early 2006 and the fifth to seventh volumes in late 2006. The field is progressing so fast that there is a need for a set of volumes every 12 to 18 months to capture latest developments. These volumes constitute a timely comprehensive overview of SPM applications. After introducing scanning probe microscopy, including sensor technology and tip characterization, chapters on use in various industrial applications are presented. Industrial applications span topographic and dynamical surface studies of thin-film semiconductors, polymers, paper, ceramics, and magnetic and biological materials. The chapters have been written by leading researchers and application scientists from all over the world and from various industries to provide a broader perspective.


Applied Scanning Probe Methods XI

Applied Scanning Probe Methods XI

Author: Bharat Bhushan

Publisher: Springer Science & Business Media

Published: 2008-10-22

Total Pages: 281

ISBN-13: 3540850376

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The volumes XI, XII and XIII examine the physical and technical foundation for recent progress in applied scanning probe techniques. These volumes constitute a timely comprehensive overview of SPM applications. Real industrial applications are included.


Applied Scanning Probe Methods XII

Applied Scanning Probe Methods XII

Author: Bharat Bhushan

Publisher: Springer Science & Business Media

Published: 2008-10-24

Total Pages: 271

ISBN-13: 3540850392

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Crack initiation and growth are key issues when it comes to the mechanical reliab- ity of microelectronic devices and microelectromechanical systems (MEMS). Es- cially in organic electronics where exible substrates will play a major role these issues will become of utmost importance. It is therefore necessary to develop me- ods which in situ allow the experimental investigation of surface deformation and fracture processes in thin layers at a micro and nanometer scale. While scanning electron microscopy (SEM) might be used it is also associated with some major experimental drawbacks. First of all if polymers are investigated they usually have to be coated with a metal layer due to their commonly non-conductive nature. Additi- ally they might be damaged by the electron beam of the microscope or the vacuum might cause outgasing of solvents or evaporation of water and thus change material properties. Furthermore, for all kinds of materials a considerable amount of expe- mental effort is necessary to build a tensile testing machine that ts into the chamber. Therefore, a very promising alternative to SEM is based on the use of an atomic force microscope (AFM) to observe in situ surface deformation processes during straining of a specimen. First steps towards this goal were shown in the 1990s in [1–4] but none of these approaches truly was a microtensile test with sample thicknesses in the range of micrometers. To the authors’ knowledge, this was shown for the rst time by Hild et al. in [5]. 16.


Nanotribology and Nanomechanics II

Nanotribology and Nanomechanics II

Author: Bharat Bhushan

Publisher: Springer Science & Business Media

Published: 2011-05-30

Total Pages: 1025

ISBN-13: 3642152635

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The comprehensive reference and textbook serves as a timely, practical introduction to the principles of nanotribology and nanomechanics. Assuming some familiarity with macroscopic tribology, the book comprises chapters by internationally recognized experts, who integrate knowledge of the field from the mechanics and materials-science perspectives. They cover key measurement techniques, their applications, and theoretical modelling of interfaces, each beginning their contributions with macro- and progressing to microconcepts.


Springer Handbook of Nanotechnology

Springer Handbook of Nanotechnology

Author: Bharat Bhushan

Publisher: Springer Science & Business Media

Published: 2010-04-23

Total Pages: 1968

ISBN-13: 3642025250

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Since 2004 and with the 2nd edition in 2006, the Springer Handbook of Nanotechnology has established itself as the definitive reference in the nanoscience and nanotechnology area. It integrates the knowledge from nanofabrication, nanodevices, nanomechanics, Nanotribology, materials science, and reliability engineering in just one volume. Beside the presentation of nanostructures, micro/nanofabrication, and micro/nanodevices, special emphasis is on scanning probe microscopy, nanotribology and nanomechanics, molecularly thick films, industrial applications and microdevice reliability, and on social aspects. In its 3rd edition, the book grew from 8 to 9 parts now including a part with chapters on biomimetics. More information is added to such fields as bionanotechnology, nanorobotics, and (bio)MEMS/NEMS, bio/nanotribology and bio/nanomechanics. The book is organized by an experienced editor with a universal knowledge and written by an international team of over 150 distinguished experts. It addresses mechanical and electrical engineers, materials scientists, physicists and chemists who work either in the nano area or in a field that is or will be influenced by this new key technology.


Scanning Probe Microscopy in Nanoscience and Nanotechnology

Scanning Probe Microscopy in Nanoscience and Nanotechnology

Author: Bharat Bhushan

Publisher: Springer Science & Business Media

Published: 2010-01-22

Total Pages: 975

ISBN-13: 3642035353

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This book presents the physical and technical foundation of the state-of-the-art in applied scanning probe techniques. It constitutes a comprehensive overview of SPM applications. The chapters are written by leading researchers and application scientists.


Applied Scanning Probe Methods VIII

Applied Scanning Probe Methods VIII

Author: Bharat Bhushan

Publisher: Springer Science & Business Media

Published: 2007-12-20

Total Pages: 512

ISBN-13: 3540740805

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The volumes VIII, IX and X examine the physical and technical foundation for recent progress in applied scanning probe techniques. This is the first book to summarize the state-of-the-art of this technique. The field is progressing so fast that there is a need for a set of volumes every 12 to 18 months to capture latest developments. These volumes constitute a timely comprehensive overview of SPM applications.


Applied Scanning Probe Methods I

Applied Scanning Probe Methods I

Author: Bharat Bhushan

Publisher: Springer Science & Business Media

Published: 2014-02-26

Total Pages: 485

ISBN-13: 364235792X

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Examining the physical and technical foundation for recent progress with this technique, Applied Scanning Probe Methods offers a timely and comprehensive overview of SPM applications, now that industrial applications span topographic and dynamical surface studies of thin-film semiconductors, polymers, paper, ceramics, and magnetic and biological materials. First it lays the theoretical background of static and dynamic force microscopies, including sensor technology and tip characterization, contributions detail applications such as macro- and nanotribology, polymer surfaces, and roughness investigations. The final part on industrial research addresses special applications of scanning force nanoprobes such as atomic manipulation and surface modification, as well as single electron devices based on SPM.


Analytical Geomicrobiology

Analytical Geomicrobiology

Author: Janice P. L. Kenney

Publisher: Cambridge University Press

Published: 2019-07-18

Total Pages: 429

ISBN-13: 1107070333

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A comprehensive handbook outlining state-of-the-art analytical techniques used in geomicrobiology, for advanced students, researchers and professional scientists.


Polymer Science

Polymer Science

Author: Faris Yılmaz

Publisher: BoD – Books on Demand

Published: 2013-01-23

Total Pages: 260

ISBN-13: 9535109413

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During the last ten to fifteen years the developments in polymer science has been striking attention and undergone important changes. From rather specialized subject intended for engineers interested in certain definite fields, it has developed into one of the fundamental disciplines common to several branches of engineering and science. To serve this purpose, the subject materials have been prepared to treat a comprehensive aspects of polymer science. Following this trend, a number of rigorous books have discussed different types of polymers with great precision and elegance and at relatively high levels of abstraction, but none is complementary. A position midway between the older, traditional approach in engineering and the recent, somewhat formal expositions seems to be evolving.